Direct Numerical Simulation of 3D Salt Fingers: From Secondary Instability to Chaotic Convection
Fluid Dynamics
2016-09-08 v4
Abstract
The amplification and equilibration of three-dimensional salt fingers in unbounded uniform vertical gradients of temperature and salinity is modeled with a Direct Numerical Simulation in a triply periodic computational domain. A fluid dynamics video of the simulation shows that the secondary instability of the fastest growing square-planform finger mode is a combination of the well-known vertical shear instability of two-dimensional fingers [Holyer, 1984] and a new horizontal shear mode.
Keywords
Cite
@article{arxiv.0910.2434,
title = {Direct Numerical Simulation of 3D Salt Fingers: From Secondary Instability to Chaotic Convection},
author = {Julian A. Simeonov and Melvin E. Stern and Timour Radko},
journal= {arXiv preprint arXiv:0910.2434},
year = {2016}
}
Comments
APS DFD Gallery of Fluid Motion 2009